|
|
|
| Discussion on the safety threshold of blasting vibration velocity for slope rock masses in safety regulations for blasting(GB 6722—2014) |
| SUN Jinshan1,2,LI Zhengchuan3,CHEN Ming2,LU Wenbo2,LIU Guiying3,JIANG Qinghui2 |
| (1. Faculty of Engineering,China University of Geosciences,Wuhan,Hubei 430074,China;2. State Key Laboratory of Water Resources and Hydropower Engineering Science,Wuhan University,Wuhan,Hubei 430072,China;3. Chongqing Survey,Design and Research Institute Co.,Ltd.,of CREEC,Chongqing 400023,China) |
|
|
|
|
Abstract Seismic waves induced by blasting influence the rock masses of slopes significantly. The national safety regulations for blasting (GB 6722—2014) specifies the permissible value of the blasting vibration velocity of the slope rock,but the theoretical basis of the value is not clearly stated. The dynamic stress and the vibration velocity field in rock slopes induced by blasting seismic wave were analyzed,and the mathematical relationship between the dynamic stress and vibration velocity of rock mass was proposed. To insure that the shear and tensile failures do not take place in rock masses,the threshold of the blasting vibration velocity of the slope surface was proposed based on the simplified slope model considering the classification characteristics of the slope rock and the slope structure. The strength of rock mass,the dip angle of slope,the depth of sliding surface and the frequency of seismic wave all have a significant effect on the threshold vibration velocity. The range of the allowable blasting vibration velocity of different classes of rock mass is proposed according to the mechanism of shallow landslide. The calculated threshold of the blasting vibration velocity under the condition of no shear failure is close to the control criteria of the safety regulations for blasting (GB 6722—2014). The threshold of the blasting vibration velocity of different classes of rock mass is similar to each other when there is no tensile failure. The safety threshold of blasting vibration velocity for rock slopes in safety regulations for blasting (GB 6722—2014) should be refined further on the basis of theoretical analysis and engineering practice.
|
|
|
|
|
|
[1] 言志信,彭宁波,江 平,等. 爆破振动安全标准探讨[J]. 煤炭学报,2011,36(8):1 281–1 284.(YAN Zhixin,PENG Ningbo,JIANG Ping,et al. Research about blasting vibration safety criteria[J]. Journal of China Coal Society,2011,36(8):1 281–1 284.(in Chinese))
[2] 中华人民共和国国家标准编写组. GB6722—2014爆破安全规程[S]. 北京:中国标准出版社,2015.(The National Standards Compilation Group of People?s Republic of China. GB6722—2014 Safety regulations for blasting[S]. Beijing:Chinese Standard Press,2015.(in Chinese))
[3] 卢文波. 三峡工程临时船闸与升船机开挖中的爆破方案优化和爆破振动控制[J]. 岩石力学与工程学报,1999,18(5):497–502.(LU Wenbo. Optimization of blasting procedure and vibration control during excavation of temporary ship lock and ship lift in Three Gorges project[J]. Chinese Journal of Rock Mechanics and Engineering,1999,18(5):497–502.(in Chinese))
[4] 刘美山,吴从清,张正宇. 小湾水电站高边坡爆破震动安全判据试验研究[J]. 长江科学院院报,2007,24(1):40–43.(LIU Meishan,WU Congqing,ZHANG Zhengyu. Experimentation on judging standard of blasting vibration safety in high slope excavation of Xiaowan hydropower station[J]. Journal of Yangtze River Scientific Research Institute,2007,24(1):40–43.(in Chinese))
[5] 罗 忆,卢文波,陈 明,等. 爆破振动安全判据研究综述[J]. 爆破,2010,27(1):24–27.(LUO Yi,LU Wenbo,CHEN Ming,et al. View of research on safety criterion of blasting vibration[J]. Blasting,2010,27(1):24–27.(in Chinese))
[6] 朱传云,卢文波,董振华. 岩质边坡爆破振动安全判据综述[J]. 爆破,1997,14(4):3–17.(ZHU Chuanyun,LU Wenbo,DONG Zhenhua. A review of the safety criterion of blasting vibration for rock slope[J]. Blasting,1997,14(4):3–17.(in Chinese))
[7] 陈 明,卢文波,舒大强,等.爆破振动作用下边坡极限平衡分析的等效加速度计算方法[J].岩石力学与工程学报,2009,28(4):784–790.(CHEN Ming,LU Wenbo,SHU Daqiang,et al. Calculation method of equivalent acceleration for limit equilibrium analysis of slope under blasting vibration[J]. Chinese Journal of Rock Mechanics and Engineering,2009,28(4):784–790.(in Chinese))
[8] 中华人民共和国国家标准编写组. GBT50218—2014工程岩体分级标准[S]. 北京:中国计划出版社,2014.(The National Standards Compilation Group of People?s Republic of China. GBT50218—2014 Standard for engineering classification of rock mass[S]. Beijing:Chinese Plan Press,2014.(in Chinese))
[9] HOEK E,CARRANZA-TORRES C,CORKUM B. Hoek-Brown criterion–2002 edition[C]// Proceedings of the NARMS-TAC Conference. Toronto:[s.n.],2002:267–273.
[10] HOEK E,DIEDERICHS M S. Empirical estimation of rock mass modulus[J]. International Journal of Rock Mechanics and Mining Sciences,2006,43(2):203–215. |
|
|
|